张小刚
副教授
硕士生导师
个人信息Personal Information
学历:博士研究生毕业
毕业院校:新南威尔士大学
学科:机械设计及理论
所在单位:机械工程学院
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团队具体在以下四个方面开展了深入地研究
1. 人工关节置换手术规划/手术模拟
+ 髋关节安装位置(前倾、外展、高边等)与活动范围、安全区
+ 膝关节解剖标志与安装位置(股骨前弓、内外翻/内外旋等)
2. 人工关节置换/骨性重建术前分析
+ 步态测试与分析
+ 骨性解剖特征量化分析
+ 患者骨性组织、关节重建的有限元分析
+ 患者骨肌系统建模与分析(运动学、多体动力学分析)
3. 人工关节置换手术机器人
+ 前术智能规划
+ 手术导航 + 术中测量
+ 机械臂截骨
4. 人工关节材料和假体测试与评价
+ 材料力学性能评价与分析(拉/压/扭、镀膜力学评价等)
+ 材料磨损性能评价与分析(销盘、球盘、磨屑、微动等)
+ 假体磨损性能评价与分析(关节模拟机、微动腐蚀、磨屑等)
- Xiaogang Zhang, Yali Zhang*, Zhongmin Jin. A semi-analytical approach to the elastic loading behaviour of rough surfaces. Friction, 2019.
- Wen Cui, Yanyan Bian, Hongkai Zeng, Xiaogang Zhang, Yali Zhang*, Xisheng Weng, Shixuan Xin, Zhongmin Jin. Structural and tribological characteristics of ultra-low-wear polyethylene as artificial joint materials. Journal of the Mechanical Behavior of Biomedical Materials, 2020 104: 103629.
- Jian Pu, Dongsheng Wu, Yali Zhang*, Xiaogang Zhang and Zhongmin Jin*. An Experimental Study on the Fretting Corrosion Behaviours of Three Material Pairs at Modular Interfaces for Hip Joint Implants. Lubricants. 2021, 9(2): 12.
- Xiaogang Zhang, Yali Zhang*, Zhongmin Jin. A semi-analytical approach to the elastic loading behaviour of rough surfaces. Friction, 2019.
- Wen Cui, Yanyan Bian, Hongkai Zeng, Xiaogang Zhang, Yali Zhang*, Xisheng Weng, Shixuan Xin, Zhongmin Jin. Structural and tribological characteristics of ultra-low-wear polyethylene as artificial joint materials. Journal of the Mechanical Behavior of Biomedical Materials, 2020 104: 103629.
- Jian Pu, Dongsheng Wu, Yali Zhang*, Xiaogang Zhang and Zhongmin Jin*. An Experimental Study on the Fretting Corrosion Behaviours of Three Material Pairs at Modular Interfaces for Hip Joint Implants. Lubricants. 2021, 9(2): 12.
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- ***材料磨损性能比较试验
- 模拟体内力学环境下一种新型解剖型人工踝关节假体生物力学及磨损机理的研究
- The research on the biomechanics and Wearing Mechanism of a Newly Designed Anatomical Ankle Prosthesis after Total Ankle Arthroplasty
- Cooperative regulation mechanism of the in vivo bearing and regeneration of the fixation interface of biological artificial knee joints
- In-vivo behavior and control mechanism of high-function, long-life artificial joint interfaces
- Material wear performance comparison test